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基于电离室的高剂量率近距离放射治疗剂量测定及高分辨率固体探测器校准的参考条件。

Reference conditions for ion-chamber based HDR brachytherapy dosimetry and for the calibration of high-resolution solid detectors.

作者信息

Schoenfeld Andreas A, Büsing Katrin, Delfs Björn, Chofor Ndimofor, Jiang Ping, Harder Dietrich, Poppe Björn, Willborn Kay C

机构信息

University Clinic for Medical Radiation Physik, Pius Hospital, Medical Campus of the Carl von Ossietzky University of Oldenburg, Germany.

University Clinic for Medical Radiation Physik, Pius Hospital, Medical Campus of the Carl von Ossietzky University of Oldenburg, Germany.

出版信息

Z Med Phys. 2018 Dec;28(4):293-302. doi: 10.1016/j.zemedi.2017.09.003. Epub 2017 Sep 29.

Abstract

The aim of this study has been to develop a two-step method of in-phantom dosimetry around a brachytherapy Ir photon source. The first step is to measure the absorbed dose rate to water with a calibrated ionization chamber under reference conditions, the second to cross-calibrate, under these conditions, small solid-state detectors such as silicon diodes, synthetic diamond or scintillation detectors suited for spatially resolved dose rate measurements at other, particularly at smaller source axis distances in the water phantom. This two-step approach constitutes a method for in-phantom dosimetry in brachytherapy, analogous to the "small calibration field" commonly used in teletherapy to provide the reference conditions for the cross-calibration of high-resolution detectors. Under reference conditions, all known corrections for radiation quality, volume averaging and position of the chamber's effective point of measurement (EPOM) have to be applied. The study is therefore particularly devoted to (1) the experimental determination of the position of the source axis, (2) a general formulation for the volume averaging correction factor of small ionization chambers and (3) the experimental determination of the EPOM positions for the PinPoint chamber 31014 and the 3D-PinPoint chamber PTW 31022 (both PTW Freiburg, Germany). The distance of 30mm from the source axis was chosen as the reference condition for cross calibrations. This concept is realized with the instrumentation available in a hospital, a scanning-type water phantom, a software package for small field dosimetry and detectors typically used in clinical routine dosimetry. The present development of a method of in-phantom dose measurement under Ir brachytherapy conditions was performed in recognition of the primary role of dose calculations, e.g. according to the AAPM TG43 recommendations. But in addition, the methodology tested here is paving a practicable way for the experimental check of typical dose values under clinical conditions, should the need arise.

摘要

本研究的目的是开发一种围绕近距离放射治疗铱光子源进行模体剂量测定的两步法。第一步是在参考条件下用校准过的电离室测量水的吸收剂量率,第二步是在这些条件下对小型固态探测器进行交叉校准,这些探测器如硅二极管、合成金刚石或闪烁探测器,适用于在水模体中其他位置,特别是在较小源轴距离处进行空间分辨剂量率测量。这种两步法构成了一种近距离放射治疗模体剂量测定方法,类似于外照射治疗中常用的“小校准野”,用于为高分辨率探测器的交叉校准提供参考条件。在参考条件下,必须应用所有已知的辐射质量、体积平均和电离室有效测量点(EPOM)位置的校正。因此,本研究特别致力于:(1)源轴位置的实验测定;(2)小型电离室体积平均校正因子的一般公式;(3)PinPoint室31014和3D-PinPoint室PTW 31022(均为德国弗莱堡PTW公司)的EPOM位置的实验测定。选择距源轴30mm的距离作为交叉校准的参考条件。这一概念通过医院现有的仪器设备得以实现,包括扫描型水模体、用于小射野剂量测定的软件包以及临床常规剂量测定中常用的探测器。在铱近距离放射治疗条件下进行模体剂量测量方法的当前开发,是认识到剂量计算的主要作用,例如根据美国医学物理学家协会(AAPM)TG43建议。但此外,这里测试的方法正在为临床条件下典型剂量值的实验验证铺平一条可行的道路,如有需要的话。

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